Specs
TECHNICAL SPECIFICATIONS FOR
SOLAR INVERTER SYSTEM (OFF GRID TYPE)
S.No. |
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1) |
Rating |
1 KVA |
2 KVA |
3 KVA |
5 KVA |
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2) |
DC VOLT |
24 or 48 VDC |
48 VDC / 72 VDC / 96 VDC |
96 VDC/120 VDC / 144 VDC |
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3) |
I/P RANGE |
20 VDC – 60 VDC |
40 VDC – 100VDC |
80 VDC – 200 VDC |
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4) |
DC AC EFF |
> 90% |
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5) |
O/P WAVEFORM |
Pure Sine Wave |
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6) |
THD |
<3% for Linear Load, 5% for Nonlinear Load |
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7) |
LOAD PF |
0.8 to Unity |
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8) |
CREST FACTOR |
3 : 1 |
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9) |
METERING |
LCD Display for : Input DC volt ; Output volt AC ; Output Current ; Output frequency ; DC Current; KWH |
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10) |
Indication |
DC ON ; DC Under ; Dc Over ; Overload ; Load on mains ;Mains Charger on |
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11) |
PROTECTIONS |
Battery low / dc under ; DC Over ; Over load / Short circuit ; Manual C / O to mains charger incase of solar not available ; Input reverse polarity blocking diode |
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12) |
FEATURES |
Inbuilt high frequency SMPS type MPPT charger ; Inbuilt galvanic isolation ; MPPT eff –93% |
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13) |
Indications for MPPT |
Solar ON ; Charging ON |
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14) |
SWITCH GEARS |
a) Input MCB for solar, Battery, MPPT ; b) Output MCB for AC |
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15) |
Fuses |
Fuse Protection at DC and AC side |
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16) |
IEC / BIS |
Product Meets IEC / BIS Standards |
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1000 W |
2000 W |
3000 W |
5000 W |
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17) |
Space required for Polycrystalline Solar Panel |
110 Sq. ft |
220 Sq. ft |
330 Sq. ft |
550 Sq. ft |
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18) |
Space required for Thin film Solar Panel |
200 Sq. ft |
440 Sq. ft |
600 Sq. ft |
1000 Sq. ft |
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19) |
Overall Dimensions of Solar charger controlled Inverter (in mm) |
D = 390 mm W = 240 mm H = 390 mm |
D = 450 mm W = 180 mm H = 480 mm |
D = 450 mm W = 180 mm H = 480 mm |
D = 615 mm W = 400 mm H = 620 mm |
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Weight |
30 Kg |
40Kg
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50 Kg |
60 Kg
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BRIEF DESCRIPTION OF SOLAR INVERTER SYSTEM
1) MPPT charger SMPS technology having efficiency greater than 90%.
2) Maximum power transfer point tracking system type charger.
3) The charger SMPS firing angle is adjusted to get a voltage output such that highest current at output is available for battery.
4) This is required for getting maximum power from solar panel.
5) The output from solar panel should be such that even if voltage is lower the current to battery is high.
6) This is required because solar is not an infinite source hence self regulating charger is required which will charge the battery in minimum time.
a) The power factor of charger is 0.9.
7) The inverter is PSW with 3% distortion on resistive load.
8) Inverter has overload protection, short circuit protection, reverse grid protection.
9) Inverter is reverse booster charger type.
10) It has auto restart overload protection.
11) It has auto DUSK ON facility.
12) The system is designed for low battery voltage since client can spend lower money for battery; buying few 200 AH battery is cheaper than large quantity battery of lower AH.
13) Manual change over to mains.